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首页> 外文期刊>The Indian Journal of Agronomy >Effect of variable irrigation supply based diversification of Bt cotton (Gossypium hirsutum)-wheat (Triticum aestivum) system on productivity, profitability, soilfertility and water expense efficiency
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Effect of variable irrigation supply based diversification of Bt cotton (Gossypium hirsutum)-wheat (Triticum aestivum) system on productivity, profitability, soilfertility and water expense efficiency

机译:基于Bt棉(Gossymium Hirsutum) - 底(Triticum Aestivum)系统的可变灌溉供应基于灌溉供应的影响对生产力,盈利,虐分能和水费效率

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摘要

A field experiment was conducted during 2010-2013 at Punjab Agricultural University, Regional Station, Bathinda, Punjab to study the options for diversification of existing Bt cotton (Gossypium hirsutum L.)-wheat [Triti-cum aestivum (L.) emend. Fiori & Paol.] cropping system under water scarce conditions. Three crop sequences, viz. wheat-Bt cotton, wheat-clusterbean [Cyamopsis tetragonoloba (L.) Taub], wheat-greengram [Vigna radiata (L.) Wilezek] in the main-plots and 3 irrigation regimes [optimum (O),sub-optimum (SO) and sub-sub optimum (SSO)] were taken in sub-plots with 3 replications under split-plot design. The sowing of the wheat was done according to the time of harvesting of previous crop (cotton, clusterbean and greengram) in same plots. Thewheat grain yield was significantly higher where greengram and clusterbean were the preceding crop in rainy (kharif) season than cotton. There was 15.6% and 53.1% decrease in wheat grain yield, respectively under sub-optimum and sub-sub optimum irrigation supply than optimum level. Among the 3 wheat-based cropping sequences, cotton-wheat system gave significantly higher cotton equivalent yield (CEY), which was at par with clusterbean-wheat system under limited water supplies. The CEY in cotton-wheat sequence, where 4 irrigations (SO) were given was at par with the SO level (1 irrigation) of clusterbean-wheat system. At SSO irrigation, where 3 irrigations to cotton and no-irrigation to clusterbean, the CEY's of both the systems were at par. The highestwater productivity (0.358 kg/m~3), net returns (52.3 x 10~3f/ha) and benefit: cost ratio (2.38) were found under clusterbean-wheat crop sequence. This sequence also sustained soil health with higher values of organic carbon (0.37%), available nitrogen (118 kg/ha), available phosphorus (18.9 kg) and available potassium (332 kg/ha) levels than other cfop sequences. Significantly the highest yield was recorded in optimum water regime in all rainy season {kharif) crops. Under sub-sub optimum irrigation, theseed cotton yield decreased significantly compared to sub-sub optimum level of clusterbean, where no irrigation was given to clusterbean.
机译:在旁遮普农业大学,区域站,浴台,旁遮普邦旁探2010 - 2013年的田间实验,研究了现有的BT棉花多样化的选择 - 小麦[Triti-Cum Aestivum(L.)修改。 Fiori&Paol。]裁剪系统在水资源稀缺条件下。三个作物序列,viz。小麦 - BT棉,小麦 - 簇生[Cyamopsis Tetragrapholoba(L.)Taub],小麦 - 绿色克拉[Vigna Radiata(L.)Wilezek]在主图和3次灌溉制度[最佳(O),次优(所以)和亚次优化(SSO)]在分裂图下的3个复制中拍摄。根据在同一地块中收获之前的作物(棉花,簇绒和环保)的时间来完成小麦的播种。谷物产量显着高,绿克和聚氨酯是雨中的前后作物,而不是棉花。小麦籽粒产率下降了15.6%和53.1%,分别在次优和亚次优化灌溉供应下比最佳水平灌溉。在3个小麦的种植序列中,棉小麦系统具有明显更高的棉花等同产率(CELy),其在有限用水供应下与Clusterbean-小麦系统相提并论。棉质小麦序列的膝关节,其中4个灌溉(SO)与ClusterBean-小麦系统的含量(1灌溉)相提并论。在SSO灌溉,其中3次灌溉棉花和灌溉对ClusterBean,这两个系统的CEY都是如此。最高的水生产率(0.358千克/ m〜3),净返回(52.3×10〜3f / ha)和益处:在ClusterBean-小麦作物序列下发现成本比(2.38)。该序列还持续土壤健康,具有较高的有机碳(0.37%),可用的氮气(118千克/公顷),可用磷(18.9千克)和可用钾(332kg / ha)水平的含量高于其他CFOP序列。在所有雨季{kharif)作物中,最佳水域中记录了最高产量。根据亚次优化的灌溉,与集群中的亚次优化水平相比,这些棉花产量显着降低,而不会对ClusterBean提供灌溉。

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